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High sensitivity organic inorganic hybrid X-ray detectors with direct transduction and broadband response

机译:具有直接转导和宽带响应的高灵敏度有机无机混合X射线探测器

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摘要

X-ray detectors are critical to healthcare diagnostics, cancer therapy and homeland security, with many potential uses limited by system cost and/or detector dimensions. Current X-ray detector sensitivities are limited by the bulk X-ray attenuation of the materials and consequently necessitate thick crystals (~1 mm–1 cm), resulting in rigid structures, high operational voltages and high cost. Here we present a disruptive, flexible, low cost, broadband, and high sensitivity direct X-ray transduction technology produced by embedding high atomic number bismuth oxide nanoparticles in an organic bulk heterojunction. These hybrid detectors demonstrate sensitivities of 1712 µC mGy−1 cm−3 for “soft” X-rays and ~30 and 58 µC mGy−1 cm−3 under 6 and 15 MV “hard” X-rays generated from a medical linear accelerator; strongly competing with the current solid state detectors, all achieved at low bias voltages (−10 V) and low power, enabling detector operation powered by coin cell batteries.
机译:X射线探测器对于医疗保健诊断,癌症治疗和国土安全至关重要,其许多潜在用途受到系统成本和/或探测器尺寸的限制。当前X射线检测器的灵敏度受到材料大量X射线衰减的限制,因此需要厚晶体(〜1 mm–1 cm),从而导致结构刚性,高工作电压和高成本。在这里,我们提出了一种破坏性,灵活,低成本,宽带和高灵敏度的直接X射线换能技术,该技术通过将高原子序数的氧化铋纳米粒子嵌入有机本体异质结中而产生。这些混合探测器对“软” X射线的灵敏度为1712 µC mGy -1 cm −3 ,灵敏度分别为30和58 µC mGy -1 cm −3 ;在低偏置电压(-10 V)和低功耗下均能与当前的固态检测器展开激烈竞争,从而使检测器能够由纽扣电池供电。

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